Negro-Vilar A, Culler M D, Valença M M, Flack T B, Wisniewski G
Reproductive Neuroendocrinology Section, National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709.
Environ Health Perspect. 1987 Nov;75:37-43. doi: 10.1289/ehp.877537.
Neuropeptides are defined chemical messengers produced by the brain to modulate its own activity and also to regulate the function of every organ system. These neuropeptides can be viewed as coded chemical signals produced by the brain and secreted into the blood or into other fluids, such as the cerebrospinal fluid, to be transported and to act at a distant site. The signals arrive to the target organ or sometimes to an intermediary station, such as the pituitary gland, where they are decoded, transformed into a more powerful signal, and sent again through the general circulation to reach their final target. Our work has characterized the episodic or pulsatile pattern of secretion of a number of peptide hormones produced by the brain or the pituitary gland and analyzed the brain mechanisms involved in the generation of such a pulsatile pattern of hormone secretion. Molecular biology approaches have provided information on the synthesis, processing, and secretion of these brain messengers. In addition, using computer-assisted perifusion systems, we have been able to reproduce in vitro some of the signals produced by the brain and are currently trying to decode the message carried by those signals, as well as determining the intracellular messengers involved in the signal process. The importance of the neuropeptides and of the messages carried by the pulsatile signal is underlined by experiments in which animals treated with a neurotoxin were rendered infertile.(ABSTRACT TRUNCATED AT 250 WORDS)
神经肽是由大脑产生的特定化学信使,用于调节大脑自身的活动,也用于调节每个器官系统的功能。这些神经肽可被视为大脑产生并分泌到血液或其他体液(如脑脊液)中的编码化学信号,以便运输并在远处发挥作用。信号到达靶器官,有时到达中间站,如垂体,在那里它们被解码,转化为更强有力的信号,然后再次通过体循环到达最终靶标。我们的研究已经确定了大脑或垂体产生的多种肽类激素的间歇性或脉冲式分泌模式,并分析了参与产生这种脉冲式激素分泌模式的大脑机制。分子生物学方法提供了有关这些大脑信使的合成、加工和分泌的信息。此外,利用计算机辅助灌流系统,我们已经能够在体外重现大脑产生的一些信号,目前正在尝试解码这些信号携带的信息,以及确定信号过程中涉及的细胞内信使。用神经毒素处理动物导致不育的实验强调了神经肽和脉冲信号携带的信息的重要性。(摘要截选至250字)